期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Long noncoding RNA TMEM147-AS1 serves as a microRNA-326 sponge to aggravate the malignancy of gastric cancer by upregulating SMAD5
1
作者 XUFU QIN ziye jiang +2 位作者 YONGCUI ZHU HONGPENG XUE CHENGQUN WEI 《Oncology Research》 SCIE 2021年第4期263-273,共11页
The abnormal expression of long noncoding RNAs(lncRNAs)is frequently observed in gastric cancer(GC)and considered an important driving force in GC progression.However,little is known regarding the involvement of TMEM1... The abnormal expression of long noncoding RNAs(lncRNAs)is frequently observed in gastric cancer(GC)and considered an important driving force in GC progression.However,little is known regarding the involvement of TMEM147-AS1 in GC.Therefore,we examined TMEM147-AS1 expression in GC and determined its prognostic value.In addition,TMEM147-AS1 expression was depleted to identify the functional changes in response to TMEM147-AS1 deficiency.Using the cancer genome atlas dataset and our own cohort,we identified a strong expression of TMEM147-AS1 in GC.Increased TMEM147-AS1 levels in GC showed a significant association with poor prognosis.TMEM147-AS1 interference resulted in the inhibition of GC cell proliferation,colony-forming,migration,and invasion in vitro.Additionally,depletion of TMEM147-AS1 restricted the growth of GC cells in vivo.Mechanistically,TMEM147-AS1 functioned as a microRNA-326(miR-326)sponge.Furthermore,SMAD family member 5(SMAD5)was experimentally validated as the functional effector of miR-326.TMEM147-AS1 was demonstrated to sequester miR-326 away from SMAD5;consequently,knocking down TMEM147-AS1 downregulated SMAD5 levels in GC cells.The functional suppression of miR-326 or reintroduction of SMAD5 effectively reversed the attenuated behavior of GC cells caused by TMEM147-AS1 downregulation.In summary,TMEM147-AS1 exhibits tumorigenic activities in GC,which is likely the result of an altered miR-326/SMAD5 axis.Therefore,targeting TMEM147-AS1/miR-326/SMAD5 may represent a target for the treatment of GC. 展开更多
关键词 TMEM147-AS1 Gastric cancer ceRNA miRNA sponge
下载PDF
还原-氧化协同降解全/多卤代有机污染物 被引量:3
2
作者 王楠 周宇齐 +4 位作者 姜子叶 吕田钰 林进 宋洲 朱丽华 《化学进展》 SCIE CAS CSCD 北大核心 2022年第12期2667-2685,共19页
全/多卤代有机污染物大多具有生态毒性、生物蓄积性、环境持久性及长距离迁移性,不仅危害环境与生态安全,而且可经食物链传递威胁人类健康。由于卤原子是吸电子基团且取代数目多,这类物质的最高占据分子轨道能较低,难于被氧化降解,相反... 全/多卤代有机污染物大多具有生态毒性、生物蓄积性、环境持久性及长距离迁移性,不仅危害环境与生态安全,而且可经食物链传递威胁人类健康。由于卤原子是吸电子基团且取代数目多,这类物质的最高占据分子轨道能较低,难于被氧化降解,相反较易被还原法脱卤降解。随卤原子取代数减少,脱卤产物难被进一步还原,而其毒性甚至高于母体污染物。注意到低卤代有机物更容易发生氧化降解,一些研究构建了还原-氧化接力降解体系,即先利用还原法将全/多卤代有机污染物还原为低卤代产物,再利用氧化法降解这些中间产物,从而实现深度/完全脱卤和矿化。本文根据催化反应类型对还原-氧化联用法进行了归纳,分类介绍了基于传统化学催化、光催化、电化学、光电化学及机械化学等构建还原-氧化协同降解体系的原理及应用,以期为开发高效的处置技术提供思路和建议。 展开更多
关键词 卤代有机污染物 降解 还原脱卤 氧化 活性氧自由基
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部